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Why are dropout fuses important in medium voltage distribution lines?
A drop-out fuse served as a key component in ensuring the reliable operation of medium voltage distribution lines. These protective devices are designed to safeguard the system against overcurrent events, which can cause risks to both equipment and personnel. Understanding the necessity of drop-out fuse cutouts in medium voltage distribution lines requires an exploration of their functions, components, and benefits.
What is the definition of dropout fuse?
A dropout fuse is an electrical component that is used as a fault protection device in most urban and rural distribution systems. It is also used in medium voltage industrial applications for primary backups and secondary backups. The dropout fuse operates in the event of an extremely high voltage supplied to the transformers. Before the high voltage could cause any harm to the transformer, it broke the circuit. A dropout fuse is also used as a switching device when the circuit is under repair or maintenance.
What are Functions of the drop-out fuse in Medium Voltage Distribution Lines?
The function of the drop-out fuse in medium voltage distribution lines is to provide a safety mechanism that disconnects the circuit in case of a fault. When a fault occurs, such as an overload or short circuit, the drop-out fuse quickly detects the abnormality and opens the circuit to prevent damage to the equipment and ensure the safety of personnel. By interrupting the flow of electricity, the drop-out fuse helps to isolate the faulted section of the system and allows for easy identification and repair. The following points detail the functions of the drop-out fuse:
1- Overcurrent Protection: Dropout fuses are designed to protect the distribution system from overcurrent conditions that can occur due to faults, short circuits, or overloads. When the current in the system exceeds the rated capacity of the fuse, it will melt or blow, interrupting the circuit and preventing damage to the equipment and system.
2- Isolation: In addition to providing protection from overcurrent conditions, dropout fuses also serve as a means of isolating the faulty section of the line. By blowing the fuse, the faulted section can be isolated quickly, allowing the rest of the system to continue operating without interruption.
3- Safety: Dropout fuses enhance the safety of the distribution system by reducing the risk of electrical fires and other hazards that can result from overcurrent conditions. By interrupting the flow of current when necessary, dropout fuses help prevent damage to equipment and mitigate the risk of injuries to personnel.
4- Maintenance: Dropout fuses can also facilitate maintenance and repair activities on the distribution system. By isolating specific sections of the line using dropout fuses, maintenance personnel can work on the system safely without the risk of exposure to live electrical currents.
To sum up, Drop-out fuse cutouts are electrical components used in medium voltage distribution systems to protect against overloads and short circuits. They disconnect the circuit during faults, ensuring safety and preventing equipment damage. These fuses have been used for years and are crucial in modern electrical grids. They provide overcurrent protection, isolate faulty sections, enhance safety, and facilitate maintenance. Drop-out fuses play a vital role in ensuring system reliability by quickly interrupting current flow and preventing thermal overloads. They consist of a fuse element, fuse tube, and fuse carrier.
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Komentáře

  • @michaelgallacher378

    Bess are a serious fire hazard!

    • @initiallearnwithme
      @initiallearnwithme Před 6 hodinami

      Yes, but we need correct regulation and technical standards

  • @Paul_Holmes
    @Paul_Holmes Před 8 dny

    This is boring as hell. You could explain this in 5 minutes.

  • @BurRun-kt3tf
    @BurRun-kt3tf Před 12 dny

    Thanks ❤អរគុណ

  • @chrisconklin2981
    @chrisconklin2981 Před 13 dny

    Thank you for this presentation, I found it quite comprehensive and informative. When it comes to the transition to renewable energy, a major criticism has been intermittency. Battery storage goes a long way to disarm this criticism. The challenge is to answer the question of the ability of renewable energy to supply all of our future electrical needs. Energy storage and distribution are critical.

  • @jfbeam
    @jfbeam Před 18 dny

    "rec"-"loser"??? I think I've spotted the real "loser". Let me guess, this entire video was generated by ChatGPT?

    • @initiallearnwithme
      @initiallearnwithme Před 18 dny

      Thank you for your comment. Due to I am not native speaker, so I use AI to generate voice.

  • @boredwithusernames
    @boredwithusernames Před měsícem

    Typical AI voice-over. "auto-reck-loser"!!! Can't even teach it to say re-closer! Still a very good content though, appreciate the upload ;)

  • @israelgoodluck2464
    @israelgoodluck2464 Před 2 měsíci

    Great video!

  • @motofish312
    @motofish312 Před 2 měsíci

    WOULDN'T THAT BE NICE!?????

  • @caiusofglantri5513
    @caiusofglantri5513 Před 2 měsíci

    Is this written by humans, but read by AI? It feels like they know what they are talking about, but constantly mispronouncing the main element of the video really undermines confidence! I think you should re-do it with that one amendment.

    • @initiallearnwithme
      @initiallearnwithme Před 2 měsíci

      Due to I am not native, I use AI for reading assistance. Thank you for comment. I will reproduce it.

    • @caiusofglantri5513
      @caiusofglantri5513 Před 2 měsíci

      @@initiallearnwithme I guessed so. The information is good, and the reading AI is generally good, but it was wrong with the central word. 1 little correction will make all the difference!

  • @AlanTheBeast100
    @AlanTheBeast100 Před 2 měsíci

    Often "low" voltage (say 14000 ish) is 3 phase that eventually branches into single wire, including SWGR circuits.

  • @sectokia1909
    @sectokia1909 Před 2 měsíci

    The answer to why there are often 6 wires instead of 3 on transmission is not because of capacity (one wire with twice the area is the same mass and could carry the same as 2 wires) or redundancy (you can only carry half capacity if one is lost). The reason is simply that the wires are installed by pull systems and helicopters, and there is a maximum practical weight to the cable they can handle.

    • @AlanTheBeast100
      @AlanTheBeast100 Před 2 měsíci

      It also divides circuits in useful ways. Consider a 6 wire tower - it is likely carrying power from two separate generators thereby simplifying ... everything up and downstream of it.

  • @user-jc7ee4bq2i
    @user-jc7ee4bq2i Před 2 měsíci

    Very informative. Thank you for taking the time to make this video.

  • @tpaine666
    @tpaine666 Před 2 měsíci

    One of the most important reasons for 2 to 4 cables on very high voltage lines is due to coronal discharge. At voltages in the 500 kw range and above, the voltage is so high that it can actually break down the air and discharge electricity into the air. This results in a significant power loss for these transmission lines that are not paired. By spreading out the charge, it allows for less coronal discharge.

  • @Jimmyjimjimjim
    @Jimmyjimjimjim Před 2 měsíci

    You confuse people by saying two lines. When we all see three lines bundled up. Then from there it’s either sets of two, four, etc.

    • @sectokia1909
      @sectokia1909 Před 2 měsíci

      When he says 'pole' he means the 3 phase poles, not the physical poles holding up the wires. So 2 sets of poles means 2 sets of 3 phase poles = 6 wires.

    • @AlanTheBeast100
      @AlanTheBeast100 Před 2 měsíci

      Power system diagrams are usually "single line" drawings for each 3 phase circuit.

    • @Jimmyjimjimjim
      @Jimmyjimjimjim Před 2 měsíci

      @@sectokia1909 I understand but he also said line. Using them interchangeably confuses people.

  • @snorman1911
    @snorman1911 Před 2 měsíci

    That's interesting, but I don't understand how you're counting one wire on those poles.

    • @somejoe7777
      @somejoe7777 Před 2 měsíci

      I think they mean 1 conductor per phase. Both transmission and distribution are 3-phase systems. Distribution uses 1 conductor per phase (3 conductors total), whereas transmission uses at least 2 conductors per phase (at least 6 conductors total).

    • @snorman1911
      @snorman1911 Před 2 měsíci

      @somejoe7777 that makes sense, thank you!

    • @initiallearnwithme
      @initiallearnwithme Před 2 měsíci

      That's right. Thank you

    • @snorman1911
      @snorman1911 Před 2 měsíci

      @@initiallearnwithme thanks for the video! I do always wonder about the number of conductors on poles :)

    • @AlanTheBeast100
      @AlanTheBeast100 Před 2 měsíci

      To confuse it further, look up Single Wire Ground Return.

  • @mcsaatana1614
    @mcsaatana1614 Před 2 měsíci

    Explanation was good and clear. Subbed and liked! 🤘🤘

    • @initiallearnwithme
      @initiallearnwithme Před 2 měsíci

      Thank you

    • @mcsaatana1614
      @mcsaatana1614 Před 2 měsíci

      ​@@initiallearnwithme NP bro! My hobbies are strongly based HV AC stuff and maybe thats why YT recommended your video to me. :)

  • @noelfaithfulkari2857
    @noelfaithfulkari2857 Před 2 měsíci

    Thanks alot sir. I would like you talk about electrical system protections and relay used for the protections in details, like settings...etc.

  • @NetsanetMarkos
    @NetsanetMarkos Před 3 měsíci

    Do u have what's up or telegram

  • @calvinkopanomaretele193
    @calvinkopanomaretele193 Před 3 měsíci

    Thank you

  • @elsayedreyad6291
    @elsayedreyad6291 Před 3 měsíci

    Good explanation

  • @jonbardell7079
    @jonbardell7079 Před 3 měsíci

    promo sm

  • @wayneheigl5549
    @wayneheigl5549 Před 3 měsíci

    you forget say that it does it under load . other types of switches can't operate under load .they must have the power off before they can be operated. L.B.S.s are not circuit breakers. an oil, vacuum, or gas Fs6 circuit breaker can. L.B.S. is used to isolate parts of the grid under load and (not for over current protection.)

  • @henrychileshe9479
    @henrychileshe9479 Před 3 měsíci

    Thank you 🙏 Still can’t wait for electrical engineering interview videos.

  • @pedestrianjacob8928
    @pedestrianjacob8928 Před 4 měsíci

    👋

  • @skkeldon8769
    @skkeldon8769 Před 4 měsíci

    Great video and explanation, but it would be better with animations.

  • @henrychileshe9479
    @henrychileshe9479 Před 4 měsíci

    First comment ❤

  • @henrychileshe9479
    @henrychileshe9479 Před 4 měsíci

    First viewer ..🔥

  • @henrychileshe9479
    @henrychileshe9479 Před 4 měsíci

  • @BVN-TEXAS
    @BVN-TEXAS Před 4 měsíci

    The fuel tank ??

  • @henrychileshe9479
    @henrychileshe9479 Před 4 měsíci

    Vidéos on motors and electrical engineering interviews for graduates ..🙌🏻

  • @henrychileshe9479
    @henrychileshe9479 Před 4 měsíci

    🔥🔥🔥🔥

  • @henrychileshe9479
    @henrychileshe9479 Před 4 měsíci

    It’s gonna be a long night for me here

  • @henrychileshe9479
    @henrychileshe9479 Před 4 měsíci

    Fire videos..keep up the good work 😊

  • @surendrakverma555
    @surendrakverma555 Před 5 měsíci

    Thanks 🙏

  • @user-hr2fp7yt9u
    @user-hr2fp7yt9u Před 5 měsíci

    Thanks

  • @emsservices6090
    @emsservices6090 Před 5 měsíci

    RE closer, NOT RECloser

  • @sambathbunkh
    @sambathbunkh Před 6 měsíci

    Wow very useful video

  • @user-pf8wj3up3d
    @user-pf8wj3up3d Před 7 měsíci

    Smart street lighting

  • @chendahuot2437
    @chendahuot2437 Před 8 měsíci

    👍

  • @limvutha8475
    @limvutha8475 Před 8 měsíci

    Good article

  • @limvutha8475
    @limvutha8475 Před 8 měsíci

    Smart grid

  • @user-vl8xh6oc6y
    @user-vl8xh6oc6y Před 8 měsíci

    Nice content